Neutron-Antineutron Oscillations: Theoretical Status and Experimental Prospects
High Energy Physics - Experiment
2016-08-23 v2 High Energy Physics - Phenomenology
Nuclear Experiment
Nuclear Theory
Instrumentation and Detectors
Abstract
This paper summarizes the relevant theoretical developments, outlines some ideas to improve experimental searches for free neutron-antineutron oscillations, and suggests avenues for future improvement in the experimental sensitivity.
Keywords
Cite
@article{arxiv.1410.1100,
title = {Neutron-Antineutron Oscillations: Theoretical Status and Experimental Prospects},
author = {D. G. Phillips and W. M. Snow and K. Babu and S. Banerjee and D. V. Baxter and Z. Berezhiani and M. Bergevin and S. Bhattacharya and G. Brooijmans and L. Castellanos and M-C. Chen and C. E. Coppola and R. Cowsik and J. A. Crabtree and P. Das and E. B. Dees and A. Dolgov and P. D. Ferguson and M. Frost and T. Gabriel and A. Gal and F. Gallmeier and K. Ganezer and E. Golubeva and G. Greene and B. Hartfiel and A. Hawari and L. Heilbronn and C. Johnson and Y. Kamyshkov and B. Kerbikov and M. Kitaguchi and B. Z. Kopeliovich and V. B. Kopeliovich and V. A. Kuzmin and C-Y. Liu and P. McGaughey and M. Mocko and R. Mohapatra and N. Mokhov and G. Muhrer and H. P. Mumm and L. Okun and R. W. Pattie and C. Quigg and E. Ramberg and A. Ray and A. Roy and A. Ruggles and U. Sarkar and A. Saunders and A. P. Serebrov and H. M. Shimizu and R. Shrock and A. K. Sikdar and S. Sjue and S. Striganov and L. W. Townsend and R. Tschirhart and A. Vainshtein and R. Van Kooten and Z. Wang and A. R. Young},
journal= {arXiv preprint arXiv:1410.1100},
year = {2016}
}
Comments
Submitted to Physics Reports